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Bauschinger effect design procedures for autofrettaged tubes including material removal and Sachs' method

机译:Bauschinger效应自动反馈管的设计程序,包括材料去除和SACHS的方法

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Autofrettage is used to introduce advantageous residual stresses into pressure vessels and to enhance their fatigue lifetimes. The Bauschinger effect serves to reduce the yield strength in compression as a result of prior tensile plastic overload and can produce lower compressive residual hoop stresses near the bore than are predicted by 'ideal' autofrettage solutions (elastic/perfectly plastic without Bauschinger effect). A complete analysis procedure is presented which encompasses representation of elastic-plastic uniaxial loading material behavior and of reverse-loading material behavior as a function of plastic strain during loading. Such data are then combined with some yield criterion to accurately predict elastic-plastic residual Stress fields within an autofrettaged thick cylinder. Pressure for subsequent re-yielding of the tube is calculated. The numerical procedure is further used to determine residual stress fields alter removal of material from inside diameter (ID) and/or outside diameter (OD), including the effects of any further plasticity. A specific material removal sequence is recommended. It is shown that Sachs' experimental method, which involves removing material from the ID, may very significantly overestimate autofrettage residual stresses near the bore. Stress ranges and Stress intensity factors for cracks within such stress fields are calculated together with the associated fatigue lifetimes as such cracks propagate under cyclic pressurization. The loss of fatigue lifetime resulting from the Bauschinger effect is shown to be extremely significant.
机译:用于将有利的残余应力引入压力容器并增强其疲劳寿命的自动提高。由于先前的拉伸塑料过载,Bauschinger效应用于降低压缩中的屈服强度,并且可以在钻孔附近产生较低的压缩残余箍应力,而不是受“理想”自动反馈解决方案(没有Bauschinger效应的弹性/完美塑料)。提出了一种完整的分析程序,其包括弹性塑料单轴装载材料行为的表示和作为装载过程中塑性应变的函数的反向装载材料行为。然后将这些数据与一些产生标准组合以精确地预测自动反射率厚圆筒内的弹性塑料残余应力场。计算随后再屈服的压力。数值程序还用于确定残余应力场从内径(ID)和/或外径(OD)的alter去除材料,包括任何进一步可塑性的效应。建议使用特定的材料去除序列。结果表明,涉及从ID中除去材料的Sachs的实验方法可能非常明显高估在孔附近的自动调节残余应力。随着这种裂缝在环状加压下繁殖,这种应力场内的应力范围和应力强度因子与相关的疲劳寿命一起计算。由于Bauschinger效应产生的疲劳寿命丧失被认为是极为显着的。

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